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US20090163816A1 - Ultrasonographic Device - Google Patents

Ultrasonographic Device
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Publication number
US20090163816A1
US20090163816A1US11/597,325US59732504AUS2009163816A1US 20090163816 A1US20090163816 A1US 20090163816A1US 59732504 AUS59732504 AUS 59732504AUS 2009163816 A1US2009163816 A1US 2009163816A1
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US
United States
Prior art keywords
intensity
signal
blood flow
gray
flow velocity
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Granted
Application number
US11/597,325
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US8353836B2 (en
Inventor
Takashi Azuma
Shin-ichiro Umemura
Hideyo Kamada
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Hitachi Healthcare Manufacturing Ltd
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Hitachi Medical Corp
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Assigned to HITACHI MEDICAL CORPORATIONreassignmentHITACHI MEDICAL CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: UMEMURA, SHIN-ICHIRO, KAMADA, HIDEYO, AZUMA, TAKASHI
Publication of US20090163816A1publicationCriticalpatent/US20090163816A1/en
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Publication of US8353836B2publicationCriticalpatent/US8353836B2/en
Expired - Fee Relatedlegal-statusCriticalCurrent
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Abstract

The present invention provides an ultrasonic diagnostic apparatus realizing improved visibility of a contour shape of signal components in an ultrasonic blood flow spectrum display image. The apparatus includes a gray-level correction unit for correcting intensity of an output result of a Doppler processing unit. The Doppler processing unit calculates a Doppler frequency shift in a reception signal output from a receiver and calculates blood flow velocity of a subject on the basis of the Doppler frequency shift. The gray-level correction unit has: a filtering unit for separating a signal and a noise from each other, which are included in a time-varying waveform of the blood flow velocity of the subject obtained by the Doppler processing unit on the basis of continuity on a space defined by the blood flow velocity and time; and a gray-level corrector for performing a gray level correction using, as a parameter, a boundary value between signal intensity and noise intensity obtained by the filtering unit.

Description

Claims (6)

1. An ultrasonic diagnostic apparatus comprising:
an ultrasonic probe;
a transmitter having a transmission signal generating circuit for generating a ultrasonic wave made by continuous wave or pulse wave and selectively transmitting the ultrasonic wave to a subject via the ultrasonic probe;
a receiver for phasing a reception signal received from the subject by the ultrasonic probe;
a Doppler processing unit for calculating Doppler frequency shift in the reception signal output from the receiver and calculating blood flow velocity of the subject on the basis of the Doppler frequency shift;
a display for displaying a waveform of the blood flow velocity;
a controller for controlling the transmitter, the receiver, the Doppler processing unit, and the display; and
a gray-level correcting unit for correcting gray level of an output result of the Doppler processing unit,
wherein the gray-level correcting unit includes: a filtering unit for separating a signal and a noise from each other, which are included in a time-varying waveform of the blood flow velocity of the subject obtained by the Doppler processing unit on the basis of continuity on a space defined by the blood flow velocity and time; and a gray-level corrector for performing a gray level correction using, as a parameter, a boundary value between signal intensity and noise intensity obtained by the filtering unit.
4. An ultrasonic diagnostic apparatus comprising:
an ultrasonic probe;
a transmitter having a transmission signal generating circuit for generating a ultrasonic wave made by continuous wave or pulse wave and selectively transmitting the ultrasonic wave to a subject via the ultrasonic probe;
a receiver for phasing a reception signal received from the subject by the ultrasonic probe;
a Doppler processing unit for calculating Doppler frequency shift in the reception signal output from the receiver and calculating blood flow velocity of the subject on the basis of the Doppler frequency shift;
a display for displaying a waveform of the blood flow velocity;
a controller for controlling the transmitter, the receiver, the Doppler processing unit, and the display; and
a gray-level correcting unit for correcting gray level of an output result of the Doppler processing unit,
wherein the gray-level correcting unit separates a signal and a noise from each other which are included in a time-varying waveform of the blood flow velocity of the subject obtained by the Doppler processing unit on the basis of a statistical property, and performs an intensity correction by suppressing output intensity equal to or lower than a boundary point between signal intensity and noise intensity obtained as a result of the filtering process.
US11/597,3252004-05-262004-11-10Ultrasonographic device for performing luminance correctionExpired - Fee RelatedUS8353836B2 (en)

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
JP2004-1556622004-05-26
JP20041556622004-05-26
PCT/JP2004/016631WO2005115248A1 (en)2004-05-262004-11-10Ultrasonographic device

Publications (2)

Publication NumberPublication Date
US20090163816A1true US20090163816A1 (en)2009-06-25
US8353836B2 US8353836B2 (en)2013-01-15

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Family Applications (1)

Application NumberTitlePriority DateFiling Date
US11/597,325Expired - Fee RelatedUS8353836B2 (en)2004-05-262004-11-10Ultrasonographic device for performing luminance correction

Country Status (5)

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US (1)US8353836B2 (en)
EP (1)EP1762178A4 (en)
JP (1)JP4996247B2 (en)
CN (1)CN100531674C (en)
WO (1)WO2005115248A1 (en)

Cited By (11)

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US20110098567A1 (en)*2009-10-282011-04-28Medison Co., Ltd.Three dimensional pulsed wave spectrum ultrasonic diagnostic apparatus and three dimensional pulsed wave spectrum data generation method
CN102805649A (en)*2011-06-032012-12-05深圳迈瑞生物医疗电子股份有限公司Color ultrasonic imaging method and device
US20140066773A1 (en)*2012-07-182014-03-06Toshiba Medical Systems CorporationUltrasonic diagnosis apparatus and image processing apparatus
US20140336510A1 (en)*2013-05-082014-11-13Siemens Medical Solutions Usa, Inc.Enhancement in Diagnostic Ultrasound Spectral Doppler Imaging
US20150116696A1 (en)*2012-06-052015-04-30Newsouth Innovations Pty LimitedMethod and System For Determining a Velocity of a Relative Movement Between an Object and a Fluidal Medium
US9267828B2 (en)2012-03-162016-02-23The University Of TokyoFluid flow rate detection device
US20170105699A1 (en)*2014-03-312017-04-20Hitachi, Ltd.Ultrasonic diagnostic device
US9817119B2 (en)2011-05-252017-11-14Hitachi, Ltd.Ultrasound image processing apparatus and program
US10459073B2 (en)*2015-03-052019-10-29Fujifilm CorporationAcoustic wave diagnostic apparatus and method of controlling same
US20210312594A1 (en)*2020-04-012021-10-07Hitachi, Ltd.Ultrasonic imaging apparatus and image processing apparatus
US20220175340A1 (en)*2019-04-182022-06-09The Regents Of The University Of CaliforniaSystem and method for continuous non-invasive ultrasonic monitoring of blood vessels and central organs

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US8036856B2 (en)*2005-12-012011-10-11General Electric CompanyMethod and apparatus for automatically adjusting spectral doppler gain
US7804736B2 (en)*2006-03-302010-09-28Aloka Co., Ltd.Delay controller for ultrasound receive beamformer
CN101849841B (en)*2010-06-102013-03-13复旦大学 Method of Suppressing Clutter in Ultrasound Color Flow Imaging Based on Geometric Filter
EP2599440B1 (en)*2010-11-112018-08-22Olympus CorporationUltrasonic observation device, method for operating ultrasonic observation device, and operation program for ultrasonic observation device
JP5837641B2 (en)*2014-04-082015-12-24日立アロカメディカル株式会社 Ultrasonic diagnostic equipment
WO2016176855A1 (en)*2015-05-072016-11-10深圳迈瑞生物医疗电子股份有限公司Blood flow imaging method and system
KR102030568B1 (en)*2015-12-232019-10-10지멘스 메디컬 솔루션즈 유에스에이, 인크.Ultrasound system and method of displaying doppler spectrum image
CN105708495B (en)*2016-01-262018-08-17飞依诺科技(苏州)有限公司Ultrasonic color blood flow imaging boundary processing method and system
EP3672493B1 (en)2017-08-232021-03-10Koninklijke Philips N.V.A fetal movement detection method from doppler ultrasound signal

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US6447455B2 (en)*2000-07-082002-09-10Medison Co., Ltd.Ultrasound diagnostic apparatus and method for measuring blood flow velocity using doppler effect
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US20060052698A1 (en)*2003-02-132006-03-09Thanasis LoupasFlow spectrograms synthesized from ultrasonic flow color doppler information

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US4787395A (en)*1985-02-081988-11-29Fujitsu LimitedBlood flow measuring apparatus
US4967753A (en)*1987-04-101990-11-06Cardiometrics, Inc.Apparatus, system and method for measuring spatial average velocity and/or volumetric flow of blood in a vessel
US5271404A (en)*1992-06-251993-12-21Cardiometrics, Inc.Method and apparatus for processing signal data to form an envelope on line
US6142943A (en)*1998-12-302000-11-07General Electric CompanyDoppler ultrasound automatic spectrum optimization
US6500125B1 (en)*2000-03-302002-12-31Ge Medical Systems Global Technology Company, LlcUltrasound b/color priority threshold calculation
US6447455B2 (en)*2000-07-082002-09-10Medison Co., Ltd.Ultrasound diagnostic apparatus and method for measuring blood flow velocity using doppler effect
US20040073112A1 (en)*2002-10-092004-04-15Takashi AzumaUltrasonic imaging system and ultrasonic signal processing method
US20060052698A1 (en)*2003-02-132006-03-09Thanasis LoupasFlow spectrograms synthesized from ultrasonic flow color doppler information

Cited By (14)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20110098567A1 (en)*2009-10-282011-04-28Medison Co., Ltd.Three dimensional pulsed wave spectrum ultrasonic diagnostic apparatus and three dimensional pulsed wave spectrum data generation method
US9817119B2 (en)2011-05-252017-11-14Hitachi, Ltd.Ultrasound image processing apparatus and program
CN102805649A (en)*2011-06-032012-12-05深圳迈瑞生物医疗电子股份有限公司Color ultrasonic imaging method and device
US9267828B2 (en)2012-03-162016-02-23The University Of TokyoFluid flow rate detection device
US9874580B2 (en)*2012-06-052018-01-23Newsouth Innovations Pty LimitedMethod and system for determining a velocity of a relative movement between an object and a fluidal medium
US20150116696A1 (en)*2012-06-052015-04-30Newsouth Innovations Pty LimitedMethod and System For Determining a Velocity of a Relative Movement Between an Object and a Fluidal Medium
US20140066773A1 (en)*2012-07-182014-03-06Toshiba Medical Systems CorporationUltrasonic diagnosis apparatus and image processing apparatus
US20140336510A1 (en)*2013-05-082014-11-13Siemens Medical Solutions Usa, Inc.Enhancement in Diagnostic Ultrasound Spectral Doppler Imaging
US20170105699A1 (en)*2014-03-312017-04-20Hitachi, Ltd.Ultrasonic diagnostic device
US10459073B2 (en)*2015-03-052019-10-29Fujifilm CorporationAcoustic wave diagnostic apparatus and method of controlling same
US20220175340A1 (en)*2019-04-182022-06-09The Regents Of The University Of CaliforniaSystem and method for continuous non-invasive ultrasonic monitoring of blood vessels and central organs
US12402855B2 (en)*2019-04-182025-09-02The Regents Of The University Of CaliforniaSystem and method for continuous non-invasive ultrasonic monitoring of blood vessels and central organs
US20210312594A1 (en)*2020-04-012021-10-07Hitachi, Ltd.Ultrasonic imaging apparatus and image processing apparatus
CN113491536A (en)*2020-04-012021-10-12株式会社日立制作所Ultrasonic imaging apparatus and image processing apparatus

Also Published As

Publication numberPublication date
EP1762178A1 (en)2007-03-14
JP4996247B2 (en)2012-08-08
US8353836B2 (en)2013-01-15
WO2005115248A1 (en)2005-12-08
CN1960677A (en)2007-05-09
EP1762178A4 (en)2009-07-15
CN100531674C (en)2009-08-26
JPWO2005115248A1 (en)2008-03-27

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DateCodeTitleDescription
ASAssignment

Owner name:HITACHI MEDICAL CORPORATION,JAPAN

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:AZUMA, TAKASHI;UMEMURA, SHIN-ICHIRO;KAMADA, HIDEYO;SIGNING DATES FROM 20061026 TO 20061030;REEL/FRAME:018637/0911

Owner name:HITACHI MEDICAL CORPORATION, JAPAN

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:AZUMA, TAKASHI;UMEMURA, SHIN-ICHIRO;KAMADA, HIDEYO;SIGNING DATES FROM 20061026 TO 20061030;REEL/FRAME:018637/0911

REMIMaintenance fee reminder mailed
LAPSLapse for failure to pay maintenance fees
STCHInformation on status: patent discontinuation

Free format text:PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362

FPLapsed due to failure to pay maintenance fee

Effective date:20170115


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